Low-TemperatureReverse Water-Gas Shift CatalysisEnabled by Cooperative Pt Nanoclusters and Oxygen Vacancies on La-DopedCeria

  • Dao, Vandung; 
  • Choi, Hyuk; 
  • Jang, Lee-Woon; 
  • Jimenez, Juan D.; 
  • Reddy, Kasala Prabhakar; 
  • ... Lee, In-Hwan; 
  • 외 2명
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초록

Doping ceria (CeO2) with La3+ increases the concentration of oxygen vacancies (O-v) and reconstructs the surface structure, creating Ce-O-La interfacial motifs that robustly anchor Pt nanoclusters (Pt-nc). Here, we present a nanocluster- and vacancy-engineered Pt-nc/LaCeO x catalyst that exhibits outstanding performance in the reverse water-gas shift (rWGS) reaction via a direct CO2 dissociation mechanism. Combined experimental and density functional theory studies elucidate the cooperative roles of Pt species and O-v in promoting rWGS activity. LaCeO x activates CO2 through O-v-mediated adsorption, while Pt-nc facilitates H-2 dissociation and promotes CO* formation and desorption. This interfacial coupling accelerates rWGS kinetics while suppressing CO hydrogenation into CH4, thereby enabling high CO selectivity and enhanced durability at comparatively low temperatures relative to Pt nanoparticles supported on stoichiometric CeO2 (Pt-np/CeO2). These findings demonstrate the key role of catalyst dynamics and establish vacancy-modulated nanocluster-support interactions as a powerful design principle for the rWGS reaction.

키워드

reducible oxide; nanocluster; oxygen vacancy; reverse water gas shift reaction; CO2 HYDROGENATION; CATALYST; TRANSIENT; EFFICIENT; PRESSURE; ATOMS; CERIA; CEO2
제목
Low-TemperatureReverse Water-Gas Shift CatalysisEnabled by Cooperative Pt Nanoclusters and Oxygen Vacancies on La-DopedCeria
저자
Dao, Vandung; Choi, Hyuk; Jang, Lee-Woon; Jimenez, Juan D.; Reddy, Kasala Prabhakar; Senanayake, Sanjaya D.; Kim, Hyun You; Lee, In-Hwan
DOI
10.1021/acs.nanolett.6c02386
발행일
2026-08-12
유형
Article
저널명
Nano Letters
권
26
호
31
페이지
10425 ~ 10433